Free · No login · ~3 minutes

The Solar-VRF Savings Calculator

Enter your building. Get modeled annual savings, payback, recommended VRF + solar sizing, and a line-item incentive breakdown — using real 2026 rates, weather hours, and program data. Every assumption is shown and editable.

1 · Location

Sets state defaults automatically

2 · Building

20,000 ft²
ft² (type any value up to 200,000)

3 · Current system

4 · Solar

Solar status

5 · Energy prices

Pre-filled: Maryland average commercial rate (2026, EIA). Edit if you know yours.

Educational estimate — not an engineering quote or tax advice. Results update live once calculated.

Your results will appear here

Fill in the five steps and hit Calculate. You'll get savings, payback, sizing, and an incentive-by-incentive breakdown.

Show your work

How this calculator thinks

Every formula, factor, and source — because a number you can't interrogate is a number you can't trust.

Peak loads use screening factors by building type (e.g. office: 28 BTU/hr·ft² cooling, 24 heating). Annual thermal load = peak × equivalent full-load hours for Mid-Atlantic climate zone 4A (≈850–1,100 cooling, 1,000–1,350 heating). Electricity = load ÷ (3,412 × seasonal COP). We model VRF at seasonal cooling COP 5.0 (residential) / 5.8 (commercial, IEER-22 class) and heating COP 3.1 including defrost — deliberately below nameplate. Existing systems use installed-stock efficiencies (SEER ~11 AC, AFUE 0.80–0.85 fossil).
Production = kW × state yield (MD/DC ≈1,300, VA ≈1,350 kWh per kW per year, PVWatts-class Mid-Atlantic estimates). Recommended array size targets 100% of modeled VRF consumption. Bill savings assume full retail net metering (current policy in MD, DC, and VA as of July 2026). SREC income = MWh × market price — DC ≈ $367.50, MD ≈ $55, VA ≈ $30 (July 2026 markets; volatile).
Installed cost benchmarks: VRF $4,000–$5,800/ton by building type; solar $2.00–$2.85/W — all overrideable in Advanced. Residential federal credits (25C/25D) expired 12/31/2025 and are shown as $0. Commercial solar takes the 30% §48E ITC where timing rules are met (most new starts must be in service by 12/31/2027). Utility rebates use published program values (e.g. Pepco MD $500/ton commercial VRF; EmPOWER residential midstream). Simple payback = net cost after upfront incentives ÷ total annual benefit. If "end of life" is checked, we count only VRF cost above a like-for-like replacement — the economically correct comparison.
It is not a Manual J/N or ASHRAE load calculation; it doesn't see your envelope, glazing, plug loads, demand charges, or rate schedules. It doesn't model heat-recovery simultaneity, battery storage, or MACRS depreciation in payback. It's built to answer one question well: is this worth a real engineering conversation? For sources and full assumption tables, see the 2026 Incentives Guide and README in the project repo.

Numbers look interesting?

The next step is a site-specific proposal from a certified installer — we'll introduce you to two or three worth talking to.

Get Matched (Free)